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Mechanical Behavior of Shale Rock under Uniaxial Cyclic Loading and Unloading Condition

机译:单轴循环加载下页岩岩石的力学行为及卸载条件

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摘要

In order to investigate the mechanical behavior of shale rock under cyclic loading and unloading condition, two kinds of incremental cyclic loading tests were conducted. Based on the result of the short-term uniaxial incremental cyclic loading test, the permanent residual strain, modulus, and damage evolution were analyzed firstly. Results showed that the relationship between the residual strains and the cycle number can be expressed by an exponential function. The deformation modulus E50 and elastic modulus ES first increased and then decreased with the peak stress under the loading condition, and both of them increased approximately linearly with the peak stress under the unloading condition. On the basis of the energy dissipation, the damage variables showed an exponential increasing with the strain at peak stress. The creep behavior of the shale rock was also analyzed. Results showed that there are obvious instantaneous strain, decay creep, and steady creep under each stress level and the specimen appears the accelerated creep stage under the 4th stress of 51.16 MPa. Based on the characteristics of the Burgers creep model, a viscoelastic-plastic creep model was proposed through viscoplastic mechanics, which agrees very well with the experimental results and can better describe the creep behavior of shale rock better than the Burgers creep model. Results can provide some mechanics reference evidence for shale gas development.
机译:为了探讨循环载荷和卸载条件下页岩岩石的力学行为,进行了两种增量循环加载试验。基于短期单轴增量环状载荷试验的结果,首先分析永久性菌株,模量和损伤进化。结果表明,残留株与循环数之间的关系可以通过指数函数表示。变形模量E50和弹性模量ES首先增加,然后随着负载条件下的峰值应力而降低,并且在卸载条件下,它们两者在峰值应力大致线性增加。在能量耗散的基础上,损伤变量显示了峰值应力的菌株的指数增加。还分析了页岩岩的蠕变行为。结果表明,在每个应力水平下存在明显的瞬时应变,衰减蠕变和稳定蠕变,并在第4个应力下出现加速的蠕变阶段51.16MPa。基于汉堡蠕变模型的特点,通过粘塑机械提出了一种粘弹性塑料蠕变模型,这与实验结果非常好,可以更好地描述页岩岩石的蠕变行为比汉堡蠕变模型更好。结果可为页岩气化开发提供一些机制参考证据。

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